A New Technique With Calcium Phosphate Precipitate Enhances Efficiency of In Vivo Plasmid DNA Gene Transfer
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概要
- 論文の詳細を見る
In vivo gene transfer with plasmid vector has been applied experimentally and clinically; however, the low level of gene transfer efficiency with plasmid vector is a problem. We speculated that the combination of calcium phosphate precipitate (CaP) and plasmid vector could solve this problem because CaP stabilizes plasmid DNA. In the present study, we used a plasmid exression vector encoding enhanced green fluorescent protein and combined the vector with CaP. Then, this combination was mixed with bovine type I atelocollagen. After incubating this mixture in phosphate-buffered saline, the amount of the plasmid DNA in the supernatant was low when the plasmid DNA was combined with CaP. Furthermore, the plasmid DNA, which was combined with CaP, was stable in DNase digestion in vitro. The plasmid vector with or without CaP, together with the atelocollagen, was transplanted subcutaneously or injected in the bone marrow of the femurs of rats. Then, the fluorescence was observed under a confocal laser scanning microscope and the fluorescence intensity in the tissue homogenates was measured. In these animal experiments, the fluorescence was extensive when the plasmid DNA was combined with CaP. These results indicate that our formula, collagen/CaP/DNA, appeared efficient for in vivo gene transfer.
- 社団法人 日本薬理学会の論文
- 2005-02-20
著者
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Ohya K
Section Of Pharmacology Department Of Hard Tissue Engineering Graduate School Tokyo Medical And Dent
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Ohya K
Tokyo Medical And Dental Univ. Tokyo Jpn
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Ohya Keiichi
Pharmacology Department Of Hard Tissue Engineering Graduate School Tokyo Medical And Dental Universi
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Ohya Keiichi
Pharmacology Department Of Hard Tissue Engineering Graduate School Tokyo Medical And Dental Universi
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Ohya K
Tokyo Medical And Dental Univ.
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Ohya Keiichi
Department Of Hard Tissue Engineering Section Of Pharmacology Tokyo Medical And Dental University Gr
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Kuroda Shinji
Section Of Oral Implantology And Regenerative Dental Medicine Department Of Masticatory Function Reh
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Kasugai S
Section Of Oral Implantology And Regenerative Dental Medicine Department Of Masticatory Function Reh
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Kasugai Shohei
Oral Implantology And Regenerative Dental Medicine Tokyo Medical And Dental University
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Kasugai Shohei
Oral Implantology And Regenerative Dental Medicine
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KURODA Shinji
Oral Implantology and Regenerative Dental Medicine, Department of Masticatory Function Rehabilitatio
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Kondo Hisatomo
Section Of Oral Implantology And Regenerative Dental Medicine Department Of Masticatory Function Reh
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Ohya Keiichi
Pharmacology Department Of Hard Tissue Engineering Division Of Bio-matrix Graduate School Tokyo Medi
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KONDO Hisatomo
Oral Implantology and Regenerative Dental Medicine, Tokyo Medical and Dental University
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Kasugai S
Section Of Oral Implantology And Regenerative Dental Medicine Department Of Masticatory Function Reh
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KURODA Shinji
Oral Implantology and Regenerative Dental Medicine, Graduate School, Tokyo Medical and Dental University, Tokyo, Japan
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